Externally added ascorbate or NADH effectively reduced ferricyanide and promoted the exit of Fe3+ originated from acid-destabilized transferrin contained inside endocytic vesicles. The effect of ascorbate was mediated by an ascorbate uptake system, and the effect of NADH was mediated by the membrane-associated oxidoreductase. At physiological concentrations of both ascorbate and NADH, the ascorbate transport and the NADH-oxidoreductase system were additive as measured by the rate of reduction of ferricyanide and by the mobilization of transferrin-associated iron. The results indicate that Fe3+ reduction may occur by a nonenzymatic reaction with ascorbate transported into the vesicle lumen. The ascorbate-mediated reduction of iron derived fr...
Sugar beet (Beta vulgaris L.) leaf plasma membrane vesicles were loaded with an NADH-generating syst...
Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using rad...
AbstractAscorbic acid is an important antioxidant in human blood. Erythrocytes contribute to the ant...
AbstractAlthough ascorbate has long been known to stimulate dietary iron (Fe) absorption and non-tra...
The factors necessary to dissociate iron from transferrin in endocytic vesicles and to mobilize the ...
It has been well documented that ascorbate enhances iron uptake, with a proposed mechanism based on ...
AbstractReduction of extracellular ferricyanide by intact cells reflects the activity of an as yet u...
Iron deficiency is a serious health issue in developing countries and also in vulnerable groups of t...
AbstractThe possible involvement of a high-potential b-type cytochrome in plasma membrane electron t...
There is evidence for an unexpected role of diferric transferrin as a terminal oxidase for the trans...
It has been well documented that ascorbate enhances iron uptake, with a proposed mechanism based on...
Ascorbate is a major water-soluble antioxidant found in body fluids of mammals, where it acts as a s...
textabstractTransferrin mediated uptake of iron is the physiological and most efficient way for intr...
Fe(III) delivery from blood plasma to cells via the transferrin (Tf) cycle was studied intensively ...
The uptake of transferrin-bound iron by cultured mammalian cells involves receptor-mediated endocyto...
Sugar beet (Beta vulgaris L.) leaf plasma membrane vesicles were loaded with an NADH-generating syst...
Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using rad...
AbstractAscorbic acid is an important antioxidant in human blood. Erythrocytes contribute to the ant...
AbstractAlthough ascorbate has long been known to stimulate dietary iron (Fe) absorption and non-tra...
The factors necessary to dissociate iron from transferrin in endocytic vesicles and to mobilize the ...
It has been well documented that ascorbate enhances iron uptake, with a proposed mechanism based on ...
AbstractReduction of extracellular ferricyanide by intact cells reflects the activity of an as yet u...
Iron deficiency is a serious health issue in developing countries and also in vulnerable groups of t...
AbstractThe possible involvement of a high-potential b-type cytochrome in plasma membrane electron t...
There is evidence for an unexpected role of diferric transferrin as a terminal oxidase for the trans...
It has been well documented that ascorbate enhances iron uptake, with a proposed mechanism based on...
Ascorbate is a major water-soluble antioxidant found in body fluids of mammals, where it acts as a s...
textabstractTransferrin mediated uptake of iron is the physiological and most efficient way for intr...
Fe(III) delivery from blood plasma to cells via the transferrin (Tf) cycle was studied intensively ...
The uptake of transferrin-bound iron by cultured mammalian cells involves receptor-mediated endocyto...
Sugar beet (Beta vulgaris L.) leaf plasma membrane vesicles were loaded with an NADH-generating syst...
Ascorbate and dehydroascorbate transport was investigated in rat liver microsomal vesicles using rad...
AbstractAscorbic acid is an important antioxidant in human blood. Erythrocytes contribute to the ant...